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Motion-compensated noninvasive periodontal health monitoring using handheld and motor-based photoacoustic-ultrasound imaging systems

机译:使用手持式和电机的光声 - 超声成像系统进行运动补偿的非侵入性牙周健康监测

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摘要

Simultaneous visualization of the teeth and periodontium is of significant clinical interest for image-based monitoring of periodontal health. We recently reported the application of a dual-modality photoacoustic-ultrasound (PA-US) imaging system for resolving periodontal anatomy and periodontal pocket depths in humans. This work utilized a linear array transducer attached to a stepper motor to generate 3D images via maximum intensity projection. This prior work also used a medical head immobilizer to reduce artifacts during volume rendering caused by motion from the subject (e.g., breathing, minor head movements). However, this solution does not completely eliminate motion artifacts while also complicating the imaging procedure and causing patient discomfort. To address this issue, we report the implementation of an image registration technique to correctly align B-mode PA-US images and generate artifact-free 2D cross-sections. Application of the deshaking technique to PA phantoms revealed 80% similarity to the ground truth when shaking was intentionally applied during stepper motor scans. Images from handheld sweeps could also be deshaken using an LED PA-US scanner. In ex vivo porcine mandibles, pigmentation of the enamel was well-estimated within 0.1 mm error. The pocket depth measured in a healthy human subject was also in good agreement with our prior study. This report demonstrates that a modality-independent registration technique can be applied to clinically relevant PA-US scans of the periodontium to reduce operator burden of skill and subject discomfort while showing potential for handheld clinical periodontal imaging.
机译:牙齿和牙周炎的同时可视化对于基于图像的牙周健康的监测是显着的临床兴趣。我们最近报道了一种用于解决人类中的牙周解剖和牙周袋深度的双级光声 - 超声(PA-US)成像系统的应用。该工作利用连接到步进电机的线性阵列换能器,通过最大强度投影产生3D图像。该事先工作还使用了医疗头固定器,以减少由受试者的运动引起的体积渲染过程中的伪像(例如,呼吸,小头部运动)。然而,该解决方案并不完全消除运动伪影,同时也使成像程序复杂化并引起患者的不适。要解决此问题,我们报告了图像登记技术的实现,以正确地对齐B模式Pa-US图像并生成无伪影2D横截面。 Deshaking技术在步进电机扫描故意施加时与地面真理的应用揭示了80%相似性。来自手持式扫描的图像也可以使用LED PA-US扫描仪设计。在离体猪下颌骨中,牙釉质的色素沉着估计在0.1毫米的误差范围内。在健康的人体主题中测量的口袋深度也与我们的事先研究同时吻合。本报告表明,型号 - 无关的登记技术可以应用于临床相关的PA-US扫描,以减少技术人员和受试者的不适,同时显示手持临床牙周成像的潜力。

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